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INSTABILITY FROM QUALITY AND QUANTITY OF ASPHALTENES (IQQA)

机译:沥青质量和数量(IQQA)造成的不稳定

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摘要

A new method for instability prediction based on the quality and quantity of fee asphaltenes (IQQA method) is presented. A simple description of solubility based on me interfacial tension together with a molecular vision of the surface tension allows to understand me low values of maltenes surface tension at the flocculation point. General stability of asphaltenes in me crude, far from flocculation, is explained considering the tendency to adopt the surface tension value of me medium to minimize the free energy of interaction. This property of the large asphaltene molecules, to change its surface tension to minimize me mterfacial tension with the media is reflected on me independence of the flocculation point with the asphaltene concentration. A traditional Heithaus experiment using Alfa methyl naphthalene (AMN) as solvent, and Hexadecane as precipitant, allows to obtain the Shell P value and the quality of asphaltenes at infinite dilution. These values together with density, weight fraction of asphaltenes, and the density of isolated asphaltenes allow to establish the general condition for stability: density of the crude's maltenes should be higher than critical density of crude's maltenes, which is the density below which me asphaltenes would precipitate. The mixture of crudes properties are calculated using the corresponding volumetric fraction and instability predicted. Some examples will be shown.
机译:提出了一种基于电荷沥青质的质和量的不稳定性预测新方法(IQQA方法)。基于界面张力和表面张力的分子视觉对溶解度的简单描述,可以使我理解在絮凝点的低价的马尔滕表面张力。考虑到采用介质的表面张力值以使相互作用的自由能最小化的趋势,解释了沥青质在原油中的一般稳定性,而不是絮凝。大的沥青质分子的这种性质,即改变其表面张力以最小化与介质的界面张力,反映在絮凝点与沥青质浓度的独立性上。传统的Heithaus实验使用Alfa甲基萘(AMN)作为溶剂,十六烷作为沉淀剂,可以在无限稀释下获得Shell P值和沥青质的质量。这些值与密度,沥青质的重量分数以及孤立的沥青质的密度共同为稳定性奠定了一般条件:原油的麦芽烯的密度应高于原油的麦芽烯的临界密度,即低于该密度时,沥青质将达到沉淀。使用相应的体积分数和预测的不稳定性来计算原油特性的混合物。将显示一些示例。

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